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A model for Ti6Al4V microstructure evolution for arbitrary temperature changes

机译:任意温度变化下Ti6Al4V微观组织演化的模型

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This paper presents a microstructure model for the titanium alloy Ti6Al4V designed to be used in coupled thermo-metallurgical-mechanical simulations of, e.g., welding processes. The microstructure evolution is increasingly taken into consideration in analyses of manufacturing processes since it directly affects the mechanical properties. Thermally driven phase evolutions are accounted for in the model. A state variable approach is adopted to represent the microstructure with the objective to integrate the microstructure changes with a thermo-mechanical model of manufacturing process simulation such as welding. The model is calibrated using the literature data and also validated against a cyclic temperature history during multi-pass welding.
机译:本文介绍了钛合金Ti6Al4V的显微组织模型,该模型设计用于例如焊接工艺的热冶金学耦合模拟。在制造过程的分析中,越来越多地考虑到微观结构的演变,因为它直接影响机械性能。在模型中考虑了热驱动相演化。采用状态变量法表示微结构,目的是将微结构变化与制造过程模拟(例如焊接)的热机械模型整合在一起。使用文献数据对模型进行校准,并在多道次焊接过程中针对循环温度历史进行验证。

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